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    • 121. 发明授权
    • Method of measuring superficial chemical species and apparatus for measuring the same
    • 测量表面化学物质的方法及其测量装置
    • US07974670B2
    • 2011-07-05
    • US10590407
    • 2005-02-22
    • Takayuki SoutaKatsuo AizawaAtsushi NakamuraSatoshi KageyamaShinya OhtsuboFumihiko Ichikawa
    • Takayuki SoutaKatsuo AizawaAtsushi NakamuraSatoshi KageyamaShinya OhtsuboFumihiko Ichikawa
    • A61B5/1455
    • A61B5/444A61B5/0059A61B5/0075
    • A method of processing skin surface observation measuring data which is able to address various sicknesses and reduce an error in sickness detection, and a measuring apparatus requiring no filter. The measuring apparatus an irradiator applying a white light to a biological surface as a sample, a detector detecting the spectra of the white light reflected off a plurality of positions on the biological surface, a plotter plotting the absorbances of the above spectra to a light spectrum multi-dimensional space, an analyzer subjecting data in the spectrum multi-dimension space obtained from the plurality of positions to multivariate analysis to determine the eigenvectors of at least first, second and third principal components, and a display projecting data at respective positions in respective eigenvector directions to display their magnitudes on a two-dimension display screen on a gray scale or in colors corresponding to the magnitudes; and a measuring method by the apparatus.
    • 一种能够处理各种疾病并减少疾病检测误差的皮肤表面观察测量数据的处理方法以及不需要过滤器的测量装置。 测量装置是将白光施加到作为样品的生物体表面的照射器,检测从生物体表面上的多个位置反射的白光的光谱的检测器,绘制器将上述光谱的吸光度绘制成光谱 多维空间的分析器,将从多个位置获得的光谱多维空间中的数据进行多元分析的分析器,以确定至少第一,第二和第三主要分量的特征向量,以及在相应的位置上的显示投影数据 特征向量方向,以二维显示屏幕上的灰度或相应于数值的颜色显示其幅度; 以及该装置的测量方法。
    • 122. 发明授权
    • Method and apparatus for writing data on storage medium
    • 在存储介质上写入数据的方法和装置
    • US07961581B2
    • 2011-06-14
    • US12479917
    • 2009-06-08
    • Atsushi NakamuraShigeru Furumiya
    • Atsushi NakamuraShigeru Furumiya
    • G11B7/00
    • G11B7/0062
    • A data recording method according to the present invention is a method for recording data as edge position information, including marks and spaces of multiple different lengths, on a storage medium by irradiating the storage medium with a pulsed energy beam. The method includes the steps of: (A) generating a write code sequence based on the data to be recorded; (B) determining a write pulse waveform, defining the power modulation of the energy beam, according to the code lengths of respective codes included in the write code sequence; and (C) modulating the power of the energy beam based on the write pulse waveform. If the shortest code length of the write code sequence is n (which is an integer equal to or greater than one), a write pulse waveform that has only one write pulse is assigned to recording mark making periods corresponding to codes with code lengths x of n, n+1 and n+2, and a write pulse waveform that has multiple write pulses Pw is assigned to recording mark making periods corresponding to codes with code lengths x of n+3 or more.
    • 根据本发明的数据记录方法是通过用脉冲能量束照射存储介质,将数据作为边缘位置信息(包括多个不同长度的标记和间隔)记录在存储介质上的方法。 该方法包括以下步骤:(A)基于要记录的数据生成写代码序列; (B)根据包含在写代码序列中的各个代码的码长,确定写入脉冲波形,定义能量束的功率调制; 和(C)基于写入脉冲波形调制能量束的功率。 如果写代码序列的最短代码长度为n(其为等于或大于1的整数),则仅具有一个写入脉冲的写入脉冲波形被分配给与代码长度为x的代码相对应的记录标记制作周期 n,n + 1和n + 2,并且具有多个写入脉冲Pw的写入脉冲波形被分配给与代码长度为x + 3或更大的代码相对应的记录标记制作周期。
    • 123. 发明申请
    • ELECTRONIC DEVICE
    • 电子设备
    • US20110126030A1
    • 2011-05-26
    • US13023491
    • 2011-02-08
    • Atsushi NakamuraToru HayashiYuichi Mabuchi
    • Atsushi NakamuraToru HayashiYuichi Mabuchi
    • G06F1/26
    • H05K1/0233H01L2224/48247H05K1/0231H05K1/165H05K2201/09263H05K2201/1003H05K2201/10189H05K2201/10689
    • An electronic device comprising: a wiring substrate having a first power-supply wiring to which a first power-supply potential is applied and a second power-supply wiring to which a second power-supply potential lower than the first power-supply potential is applied; a microcomputer having first and second power-supply terminals in which the first power-supply terminal is connected to the first power-supply wiring and the second power-supply terminal is connected to the second power-supply wiring; and a connector connected to the first and second power-supply wirings, wherein an inductor element for correcting an impedance error of the first and second wirings is connected in series to either one of the first and second power-supply wirings. According to such configuration, unnecessary electromagnetic radiation posed by a common current can be suppressed.
    • 一种电子设备,包括:布线基板,具有施加有第一电源电位的第一电源布线和施加低于所述第一电源电位的第二电源电位的第二电源布线 ; 具有第一和第二电源端子的微型计算机,其中第一电源端子连接到第一电源配线,第二电源端子连接到第二电源配线; 以及连接到第一和第二电源布线的连接器,其中用于校正第一和第二布线的阻抗误差的电感器元件串联连接到第一和第二电源布线中的任一个。 根据这种结构,可以抑制由公共电流引起的不必要的电磁辐射。
    • 124. 发明申请
    • OPTICAL RECORDING METHOD, OPTICAL RECORDING DEVICE, MASTER MEDIUM EXPOSURE DEVICE, OPTICAL INFORMATION RECORDING MEDIUM, AND REPRODUCING METHOD
    • 光学记录方法,光学记录装置,主介质曝光装置,光学信息记录介质和再现方法
    • US20110044143A1
    • 2011-02-24
    • US12916035
    • 2010-10-29
    • Atsushi NakamuraIsao KobayashiShigeru Furumiya
    • Atsushi NakamuraIsao KobayashiShigeru Furumiya
    • G11B20/00
    • G11B7/0062G11B7/261G11B20/10009G11B20/10046G11B20/10055G11B2007/0013
    • An optical recording method for recording information by irradiating an optical disc medium with a modulated write pulse train of laser light variable over a plurality of power levels such that a plurality of marks are formed on the optical disc medium, edge positions of each of the marks and a space between adjacent two of the marks being utilized for recording of the information. The optical recording method includes the steps of: encoding record data to generate encoded data which is a combination of marks and spaces; classifying the encoded data according to a combination of a mark length of the mark, a space length of a first space that immediately precedes the mark, and a space length of a second space that immediately succeeds the mark; generating a write pulse train for forming the mark, in which at least one of a leading end edge position, a trailing end edge position and a pulse width of the write pulse train is changed according to a classification result; and irradiating the optical disc medium with the write pulse train generated to form the plurality of marks on the optical disc medium.
    • 一种光记录方法,用于通过在光盘介质上形成多个标记的激光的调制写入脉冲序列对光盘介质进行照射来记录信息,使得在光盘介质上形成多个标记,每个标记的边缘位置 并且相邻两个标记之间的空间用于记录信息。 光记录方法包括以下步骤:编码记录数据以生成作为标记和空格的组合的编码数据; 根据标记的标记长度,紧接在标记之前的第一空格的空格长度和紧接着标记的第二空格的间隔长度的组合对编码数据进行分类; 产生用于形成标记的写脉冲串,其中根据分类结果改变写入脉冲串的前端边缘位置,后端边缘位置和脉冲宽度中的至少一个; 以及在光盘介质上照射生成的写入脉冲串,以在光盘介质上形成多个标记。
    • 127. 发明授权
    • Semiconductor laser diode and its fabrication process
    • 半导体激光二极管及其制造工艺
    • US07746910B2
    • 2010-06-29
    • US12023168
    • 2008-01-31
    • Satoshi KawanakaAtsushi NakamuraMasato HagimotoHideki HaraMasakatsu Yamamoto
    • Satoshi KawanakaAtsushi NakamuraMasato HagimotoHideki HaraMasakatsu Yamamoto
    • H01S5/00
    • H01S5/34326B82Y20/00H01S5/0202H01S5/028H01S5/0282H01S5/0287H01S5/1017H01S5/22H01S2301/18
    • A semiconductor laser diode device with small driving current and no distortion in the projected image. The semiconductor laser diode includes an n-GaAs substrate and, an n-cladding layer on the n-GaAs substrate, an active layer, a p-clad layer, a multilayer formed from sequentially laminated p-contact layers, and a ridge formed by selectively etching from the upper surface of the p-contact active layer to a specified depth on the p-contact layer, and an insulating film deposited on the upper surface side of the n-GaAs substrate, and formed from the side surface of the ridge to the edge periphery of the n-GaAs substrate, and a p-electrode formed on the insulating layer deposited on the ridge of the P-contact layer, and an n-type electrode formed on the lower surface of the n-GaAs substrate; and the n-GaAs substrate structure possesses a side edge serving as an absorption layer to absorb light emitted at the active layer wavelength; and a groove is fabricated at the side edge forming the front facet (forward emission side), to a depth from the p-cladding layer exceeding the active layer, from a p-cladding layer section a specified distance away from the side of the ridge along the edge, to the side of the active layer; and the groove is covered by the insulating layer.
    • 半导体激光二极管器件,驱动电流小,投影图像无变形。 半导体激光二极管包括n-GaAs衬底和在n-GaAs衬底上的n包层,由有序层,p覆层,由顺序层压的p-接触层形成的多层,以及由 从p接触有源层的上表面选择性地蚀刻到p接触层上的指定深度,以及沉积在n-GaAs衬底的上表面侧上的绝缘膜,并且从该脊的侧表面形成 在p型接触层的隆起部上形成的绝缘层上形成的p电极和形成在n-GaAs衬底的下表面上的n型电极, 并且n-GaAs衬底结构具有用作吸收层的侧边缘以吸收以有源层波长发射的光; 并且在距离脊侧的规定距离处的p型包覆层部分形成从形成前面(正向发射侧)的侧边缘到从p型包覆层超过有源层的深度的沟槽 沿边缘,到活动层的一侧; 并且沟槽被绝缘层覆盖。